PubMed Health⌕ Search

Biomedical subjects

Hong-yan Guo

Publications and source records attributed to Hong-yan Guo.

3 recordsLinked to original sources

[Study of gene differential display of hydatidiform moles].

OBJECTIVE: To screen the specific molecular maker of invasive hydatidiform moles (HM) by differential display analysis. METHODS: For dot hybridization, about 1.0 microg of each cDNA sample of invasive and non-invasive HM were labeled as probes using the Dig DNA labeling and Detection Kit (Boehringer Mannheim). The specific expression fragments of invasive HM recovered from PAGE gel were re-amplified by PCR, and the PCR products were dotted onto nylon membrane and hybridized by two probes of invasive and non-invasive HM cDNA respectively. Some fragments with a strong positive hybridization signal were cloned into the polylinker of lasmid PUC19 and were sequenced. The fragments' sequences were searched for homology in the NCBI data using the BLAST (Database: GenBank Human EST entries; Posted date:Aug 31, 2004; Number of letters in database: 1,697,659,032; Number of sequences in database: 3,677,722). RESULTS: The 20 fragments in 28 bands with specific expression in invasive HM were re-amplified, of which 13 showed positive hybridization signals, and 3 were cloned into the polylinker of lasmid PUC19. A fragment in the 3 was a new expressed sequence tag (EST) and the sequence was submitted to NCBI data (dbEST_Id: 10875704; GenBank_Accn: BM403211). CONCLUSION: There are more differences in gene expression between invasive and non-invasive HMs, and differential display analyses are of a potential significance to early diagnosis of invasive HM.

Adult↗

[Reconstruction of dentin-pulp complex structure by tissue engineering technology].

OBJECTIVE: To investigate the possibility of reconstruction of dentin-pulp complex by tissue engineering technology. METHODS: Rat dental pulp stem cells were seeded into HA-TCP scaffold and incubated for 20 hours in vitro. Then the cell-scaffold complex was implanted subcutaneously into the dorsal side of nude mice. 8 weeks postimplantation, the samples were extracted for histological and immunohistochemical examinations. RESULTS: Three strata of tissue were observed in the hole of HA-TCP scaffold. They were dentin-like tissue, predentin-like tissue and pulp-like tissue respectively from the inner surface of the pore to the center. Dentin tubules were obvious in predentin-like and dentin-like tissue lining from the pulp-like tissue through predentin-like tissue and dentin-like tissue. Cells localized along the edge of pulp-like tissue were dense and polarized, resembling odontoblasts. Immunohistochemical study demonstrated DSP and DMP1 expression in these odontoblast-like cells and in the area of predentin-like tissue. CONCLUSIONS: Tissue-engineered rat dentin-pulp complex was reconstructed by seeding HA-TCP scaffold with rat dental pulp stem cells.

Animals↗

[The relationship between malignant transformation and fertilization types of hydatidiform moles].

OBJECTIVE: To study the relationship between malignant transformation and fertilization types of hydatidiform moles (HM). METHODS: Fifty four HM specimens were analyzed by using multiplex STR-PCR (9 loci) to determine the fertilization types and all patients were followed-up for the human chorionic gonadotropin (hCG) over 1 year. RESULTS: Total malignant transformation cases were 10 in all the 54 HM. Ggenetics complete hydatidiform moles (g-CHM) with DNA from only paternal origin, were observed in 38 cases including 28 homozygote and 10 heterozygote cases. In homozygote and heterozygote cases,malignant transformation occurred in 8 cases of the empty eggs fertilized by single sperms and 2 by double sperms respectively. In all the 54 HMs, 16 cases of DNA from parents were genetic partial hydatidiform moles (g-PHM), and no malignant transformation occurred in each haploidy egg fertilized by double sperms. CONCLUSION: (1)Genetic complete hydatidiform moles (g-CHM) showed a higher malignant transformation risk than genetic partial hydatidiform moles (g-PHM) (P=0.024 2); (2)There was no significant difference in malignant transformation between homozygote and heterozygote of g-CHM (P=0.699).

Cell Transformation, Neoplastic↗